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RESEARCH ON COLLISION MECHANISMS FOR A SHIP COLLIDING WITH A SPAR PLATFORM

机译:具有SPAR平台的船舶碰撞的碰撞机理研究

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摘要

The collision mechanisms of spar platform haven't caused so much attention as that of ships in the past, for the short of this kind of collision accidents reported. But this does not mean the impossibility of the collision accident in the future. The research on external mechanism and internal mechanism for a ship colliding with a spar platform is introduced in this paper. A model test is designed to study the external mechanism. The collision scenario is described as a ship colliding with a spar platform moored in 1500 meters water depth. The specifics of the spar's motions and the tension forces of the mooring lines are gathered, to find the hydrodynamic characteristics in the collision scenario. It is found that the maximal displacements and the maximal pitch angles of the spar platform, and the maximal tension forces of mooring lines are all linearly proportional to the initial velocity of the striking ship basically. Mooring lines play elastic roles in the collision course. The internal mechanism of the ship colliding with the spar platform is achieved by numerical simulation method and the software used is MSC.DYTRAN. A Truss-Spar is taken as the object and a double hull structural design is adopted in the part of hard tank near water surface. The curves of collision characters and the structural damage are obtained. The crashworthiness of the double hull design is verified, through the numerical simulation results.
机译:翼梁平台的碰撞机理没有像过去的船舶那样引起人们的广泛关注,因为这种碰撞事故的报道很短。但这并不意味着将来不可能发生碰撞事故。本文介绍了船舶与翼梁平台相撞的外部机理和内部机理的研究。设计模型测试来研究外部机制。碰撞场景被描述为船舶与停泊在1500米水深的翼梁平台相撞。收集梁的运动细节和系泊索的拉力,以发现碰撞情况下的水动力特性。发现翼梁平台的最大位移和最大俯仰角以及系泊索的最大拉力基本上都与打击船的初始速度成线性比例关系。系泊绳在碰撞过程中起着弹性作用。通过数值模拟的方法实现了船舶与翼梁平台碰撞的内部机理,所用软件为MSC.DYTRAN。以桁架梁为对象,硬舱水面附近部分采用双层船体结构设计。得到了碰撞特征曲线和结构损伤。通过数值仿真结果验证了双壳设计的耐撞性。

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